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Proterozoic Fe-Cu metallogeny and supercontinental cycles of the southwestern Yangtze Block, southern China and northern Vietnam
Mei-Fu Zhou; Xin-Fu Zhao; Wei Terry Chen; Xiao-Chun Li; Wei Wang; Dan-Ping Yan; Hua-Ning Qiu
2014
Source PublicationEarth-Science Reviews
Volume139Issue:1Pages:59-82
AbstractThe Yangtze Block has a Paleoproterozoic and Archean basement and was traditionally thought to have been cratonized after the Neoproterozoic. Recent studies reveal that the southwestern part is remarkably different from other parts of the block. Major Fe-Cu deposits are present in the southwestern part where they form the Kangdian IOCG metallogenic province in southern China and northern Vietnam. Large Fe-Cu deposits include Lala and Xikuangshan to the north, Yinachang in the center, Dahongshan and Sin Quyen to the south and possibly Shilu to the south-east. These deposits are characterized by an association of Fe-oxides and Cu-sulfides with REE, Mo, Co, Ag, and Au as common by-products.

The ore deposits are hosted in variably metamorphosed, late Paleoproterozoic rocks (similar to 1.65-1.7 Ga) of the Dahongshan, Dongchuan, Hekou, Sin Quyen, and Shilu Groups, although the age of the Shilu Group in Hainan is poorly constrained. Molybdenite separates from the Yinachang and the Lala deposits have Re-Os model ages of 1.66 and similar to 1.0 Ga. These ages suggest that the Fe-Cu deposits formed in multiple mineralization events over an exceptionally broad time range. There was a minor hydrothermal overprint at similar to 1.45 Ga. Biotite, amphibole, and quartz from several deposits have Ar-40/Ar-39 plateau ages ranging from 850 to 780 Ma, but cluster at 830-820 Ma. These Ar-40/Ar-39 ages are considerably younger than the Fe-Cu deposits and are interpreted as the result of thermal resetting of the K-Ar system during the Neoproterozoic, consistent with the extensive Neoproterozoic igneous activity in the Yangtze Block.

The mineralization styles of the 1.66 Ga deposits in the southwestern Yangtze Block are similar to those of contemporaneous IOCG deposits in other blocks within the Columbia supercontinent, including those in the Leichhardt and Calvert Superbasins, the Mount Isa Inlier, Australia, and those in the Khetri copper belt, NW India. Together with similar hosting strata and associated igneous rocks, the occurrence of these deposits leads us to propose that these blocks were adjacent to each other in the reconstructed Columbia supercontinent. Both South China and India remained together during the assembly of the supercontinent Rodinia and have undergone extensive Neoproterozoic magmatism that overprinted the Fe-Cu deposits.
KeywordFe–cu Deposits 40ar/39ar Dating Kangdian Iocg Metallogenic Province Multiple Mineralization Events Supercontinents Sw China
Subject Area矿床地球化学
Indexed BySCI
Language英语
Document Type期刊论文
Identifierhttp://ir.gyig.ac.cn/handle/352002/5306
Collection矿床地球化学国家重点实验室_矿床地球化学国家重点实验室_期刊论文
Recommended Citation
GB/T 7714
Mei-Fu Zhou,Xin-Fu Zhao,Wei Terry Chen,et al. Proterozoic Fe-Cu metallogeny and supercontinental cycles of the southwestern Yangtze Block, southern China and northern Vietnam[J]. Earth-Science Reviews,2014,139(1):59-82.
APA Mei-Fu Zhou.,Xin-Fu Zhao.,Wei Terry Chen.,Xiao-Chun Li.,Wei Wang.,...&Hua-Ning Qiu.(2014).Proterozoic Fe-Cu metallogeny and supercontinental cycles of the southwestern Yangtze Block, southern China and northern Vietnam.Earth-Science Reviews,139(1),59-82.
MLA Mei-Fu Zhou,et al."Proterozoic Fe-Cu metallogeny and supercontinental cycles of the southwestern Yangtze Block, southern China and northern Vietnam".Earth-Science Reviews 139.1(2014):59-82.
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